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A semi-automatic two dimensional high-performance liquid chromatography (HPLC) gradient method with photo diode array detection was developed, capable of separating and quantifying up to 17 different triterpenic acids in the gum resin of the frankincense species Boswellia papyrifera. The here reported quantitation of 14 of the possible 17 compounds contains boswellic, tirucallic and lupeolic acids. All compounds were isolated from B. papyrifera and used as external standards. Quantitation of these compounds was performed after minimizing the matrix by liquid?Cliquid separation, using alkaline, acidic and organic media to separate the acids from interfering matrix compounds. Therefore, two different extraction procedures were tested, giving two different extraction profiles. Within the first run (1st dimension) 13 compounds could be quantified. Quantitation of ??-boswellic acid, which was proved to elute as inhomogeneous peak, was achieved by introduction of a second dimension, leading to a fully validated semi-automatic homomodal 2D chromatography. The method is applicable for determination of compounds occurring in different types of frankincense and their pharmaceutical products. It also can be applied to distinguish between different kinds of frankincense. Moreover, it is the first published method feasible of separating and quantifying five different types of tirucallic acids.  相似文献   
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A concise approach to the algal metabolite 1 is described, which also determines the previously unknown stereostructure of this natural product. Compound 1 is distinguished by a rare brominated 4‐pyrone nucleus linked as a ketene–acetal to a polyunsaturated macrocyclic scaffold comprising an extra homoallylic bromide entity. The synthesis of 1 is based on the elaboration and selective functionalization of the linear precursor 23 endowed with no less than six different sites of unsaturation including the highly enolized oxo‐alkanoate function. Key to success was the formation of the 2‐alkoxy‐4‐pyrone ring by a novel gold‐catalyzed transformation which engages only the acetylenic β‐ketoester substructure of 23 but leaves all other π‐bonds untouched. The synthesis was completed by a ring‐closing alkyne metathesis to forge the signature cycloalkyne motif of 1 followed by selective bromination of the ketene–acetal site in the resulting product 27 without touching the skipped diene–yne substructure resident within the macrocyclic tether.  相似文献   
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We report the experimental realization of an optical trap that localizes single Cs atoms ?215 nm from the surface of a dielectric nanofiber. By operating at magic wavelengths for pairs of counterpropagating red- and blue-detuned trapping beams, differential scalar light shifts are eliminated, and vector shifts are suppressed by ≈250. We thereby measure an absorption linewidth Γ/2π=5.7±0.1 MHz for the Cs 6S_{1/2}, F=4→6P_{3/2}, F^{'}=5 transition, where Γ_{0}/2π=5.2 MHz in free space. An optical depth d?66 is observed, corresponding to an optical depth per atom d_{1}?0.08. These advances provide an important capability for the implementation of functional quantum optical networks and precision atomic spectroscopy near dielectric surfaces.  相似文献   
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Cholesterol oxidation products (COPs) can be formed in the body or in animal foods from cholesterol during food processing. A new method for the extraction and quantification of cholesterol, 7-ketocholesterol, cholestane-3beta-5alpha-6beta-triol, 25-hydroxycholesterol, 5,6alpha-epoxycholesterol, and 7beta-hydroxycholesterol by means of reversed-phase LC/atmospheric pressure chemical ionization mass spectrometry is presented. A baseline separation of all COPs was achieved, allowing a separate quantification also for isobaric compounds. The limits of detection were 15-30 ng/mL, quantification was performed from 100 ng/mL to 10 microg/mL with RSD < 2%. The method was applied successfully to the determination of cholesterol and COPs in processed foods such as pork, beef, chicken, and egg.  相似文献   
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We employ heterodyne interferometry to investigate the effect of a single organic molecule on the phase of a propagating laser beam. We report on the first phase-contrast images of individual molecules and demonstrate a single-molecule electro-optical phase switch by applying a voltage to the microelectrodes embedded in the sample. Our results may find applications in single-molecule holography, fast optical coherent signal processing, and single-emitter quantum operations.  相似文献   
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